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The activities of CeO2 nanocubes calcined at different temperatures were tested for catalytic oxidation of o-xylene. Using CeO2 nanocubes as catalysts, complete catalytic oxidation of o-xylene was achieved below 210℃. The CeO2 nanomaterials were characterized by means of BET, X-ray diffraction (XRD), transmission electron microscopy (TEM), and high-resolution transmission electron microscopy (HRTEM). From the TEM images, all Ce02 nanocubes displayed cubic morphology irrespective of calcination temperature. The HRTEM images revealed that these nanocubes were enclosed by reactive {001}planes, which may contribute to the intrinsically catalytic property of o-xylene oxidation. The higher activity of Ce02 nanocubes calcined at 550℃ than those calcined at above 550℃ was attributed to their smaller crystallite size and larger surface area. The influences of reaction conditions were also studied, which found that a higher reaction temperature was necessary for complete catalytic oxidation of o-xylene at higher weight hourly space velocity (WHSV) and o-xylene concentration.  相似文献   
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以PMMA为模板,通过聚乙二醇(PEG400)和柠檬酸辅助的溶胶凝胶法制备三维有序介孔铈钴铜(3DOM 3C)催化剂,应用BET、SEM、XRD和XPS等对不同煅烧温度的3DOM 3C催化剂进行表征分析,研究了催化剂活性及其影响因素,并利用FT-IR和GC-MS对降解产物进行分析,推测出催化降解邻二甲苯的机理.结果表明,煅烧温度500℃时制备的3DOM 3C催化剂表面具有三维介孔结构,且分散均匀,表面的晶体氧化物最少,存在大量的Cu~(2+)、Ce~(3+)和表面氧,催化剂表面存在更多的固溶体、表面活性位点和氧空位,有利于提高催化活性.在邻二甲苯初始浓度600 ppm、空速16000 h~(-1)、50%O_2条件下,煅烧温度500℃时制备的3DOM 3C催化效果最佳,在260℃时,3DOM 3C催化剂对邻二甲苯的转化率达98%,T_(90)为250℃. 3DOM 3C对邻二甲苯的转化率随着初始浓度、空速和相对湿度的升高而呈下降趋势,随着O_2含量的增加而增加.气流中混入150 ppm的乙酸乙酯能够提高邻二甲苯的转化率,提高其低温催化性能.邻二甲苯催化反应后催化剂表面的O—H、■、C—H和金属—氧键都相应的减少,降解中间产物主要有邻甲基苯甲醛和邻甲基苯甲酸.邻二甲苯降解反应涉及Mars Van Krevelen机理(MVK),先被氧化成邻甲基苯甲醛,再进一步氧化成邻甲基苯甲酸,最终生成CO_2和H_2O.  相似文献   
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真菌降解废气中邻-二甲苯试验研究   总被引:5,自引:2,他引:3  
采用真菌降解废气中的邻-二甲苯,试验装置为真菌生物滤池.将滤池内填料分成3段,考察每一段的负荷能力、去除效率以及pH值、温度、湿度的变化特点等.邻-二甲苯的进气浓度为400~700mg·m-3,气量为0 25m3·h-1,停留时间为100s.试验结果表明,真菌能够有效地去除废气中的邻 二甲苯,总去除率达到90%以上.其中,从上到下各段的去除率分别为36 8%,28 6%和25 5%.生物滤池内产生CO2的浓度与邻 二甲苯的降解有密切关联,通过在线监测进出气中的CO2浓度变化,可以间接反映出生物滤池的运行状况和生物生长量.在本研究中,降解的邻二甲苯中的碳约74%转化成CO2.微生物鉴定结果表明,降解邻 二甲苯的微生物主要是青霉菌和诺卡氏菌.  相似文献   
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5.
降解三苯类复合微生物菌剂的制备及性能   总被引:6,自引:0,他引:6       下载免费PDF全文
将驯化后具备高效降解三苯类物质能力的活性污泥作为种泥,在特定的载体上发酵扩大培养,制成复合微生物菌剂.菌剂中的有效活菌数>109CFU/g,含水量<5%,可替代活性污泥直接投加,具有同驯化的活性污泥相当的降解性能.分别考察了pH值、烘干温度和载体比例对菌剂降解性能的影响,获得了菌剂制备的最佳工艺条件:pH值9.0,烘干温度35℃,麦麸:纤维素:稳定剂比例为85%:10%:5%.该菌剂具有较好的稳定性,可在4℃稳定保存3个月,仍保持对三苯类物质较高的去除效率,相对活性污泥更适合保存.  相似文献   
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The activities of CeO2 nanocubes calcined at di erent temperatures were tested for catalytic oxidation of o-xylene. Using CeO2 nanocubes as catalysts, complete catalytic oxidation of o-xylene was achieved below 210°C. The CeO2 nanomaterials were characterized by means of BET, X-ray di raction (XRD), transmission electron microscopy (TEM), and high-resolution transmission electron microscopy (HRTEM). From the TEM images, all CeO2 nanocubes displayed cubic morphology irrespective of calcination temperature. The HRTEM images revealed that these nanocubes were enclosed by reactive f001g planes, which may contribute to the intrinsically catalytic property of o-xylene oxidation. The higher activity of CeO2 nanocubes calcined at 550°C than those calcined at above 550°C was attributed to their smaller crystallite size and larger surface area. The influences of reaction conditions were also studied, which found that a higher reaction temperature was necessary for complete catalytic oxidation of o-xylene at higher weight hourly space velocity (WHSV) and o-xylene concentration.  相似文献   
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